CN114112112A - Combined type thermometer and control host thereof - Google Patents

Combined type thermometer and control host thereof Download PDF

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Publication number
CN114112112A
CN114112112A CN202111392385.7A CN202111392385A CN114112112A CN 114112112 A CN114112112 A CN 114112112A CN 202111392385 A CN202111392385 A CN 202111392385A CN 114112112 A CN114112112 A CN 114112112A
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CN
China
Prior art keywords
temperature measuring
control module
connector
module
electrical connector
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN202111392385.7A
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Chinese (zh)
Inventor
刘家豪
张文峰
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Inventec Appliances Shanghai Corp
Inventec Appliances Pudong Corp
Inventec Appliances Corp
Original Assignee
Inventec Appliances Shanghai Corp
Inventec Appliances Pudong Corp
Inventec Appliances Corp
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Filing date
Publication date
Application filed by Inventec Appliances Shanghai Corp, Inventec Appliances Pudong Corp, Inventec Appliances Corp filed Critical Inventec Appliances Shanghai Corp
Priority to CN202111392385.7A priority Critical patent/CN114112112A/en
Priority to TW111100336A priority patent/TWI815266B/en
Publication of CN114112112A publication Critical patent/CN114112112A/en
Pending legal-status Critical Current

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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
    • G01K13/00Thermometers specially adapted for specific purposes
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01JMEASUREMENT OF INTENSITY, VELOCITY, SPECTRAL CONTENT, POLARISATION, PHASE OR PULSE CHARACTERISTICS OF INFRARED, VISIBLE OR ULTRAVIOLET LIGHT; COLORIMETRY; RADIATION PYROMETRY
    • G01J5/00Radiation pyrometry, e.g. infrared or optical thermometry
    • G01J5/0003Radiation pyrometry, e.g. infrared or optical thermometry for sensing the radiant heat transfer of samples, e.g. emittance meter
    • G01J5/0011Ear thermometers

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Spectroscopy & Molecular Physics (AREA)
  • Measuring And Recording Apparatus For Diagnosis (AREA)
  • Bidet-Like Cleaning Device And Other Flush Toilet Accessories (AREA)
  • Measuring Pulse, Heart Rate, Blood Pressure Or Blood Flow (AREA)
  • Arrangements For Transmission Of Measured Signals (AREA)
  • Measuring Temperature Or Quantity Of Heat (AREA)
  • Details Of Connecting Devices For Male And Female Coupling (AREA)

Abstract

The invention discloses a combined type thermometer and a control host thereof. The compound thermometer comprises a control host and a plurality of temperature measuring pieces. The control host comprises a control module and an electric connector, and the control module is provided with a plurality of independent transmission paths which are connected to the electric connector. The plurality of temperature measuring parts are respectively different types defined by different measuring mechanisms, and any one of the temperature measuring parts corresponds to one transmission path according to the measuring mechanism. When one of the temperature measuring pieces is selected to be inserted into the electric connector, the control module can judge the type of the temperature measuring piece connected with the control module through the electric connector and receive the body temperature signal measured by the temperature measuring piece along the corresponding transmission path.

Description

Combined type thermometer and control host thereof
Technical Field
The invention relates to a thermometer, in particular to a composite thermometer and a control host thereof.
Background
Existing thermometers include a variety of different types of measurement mechanisms that are individually adaptable to different situations (e.g., rapid measurement of body temperature or long-term monitoring of body temperature). Accordingly, the user must have the above-mentioned various types of thermometers for use under different conditions, which obviously causes various inconveniences.
The present inventors have considered that the above-mentioned drawbacks can be improved, and have made intensive studies and use of scientific principles, and finally have proposed the present invention which is designed reasonably and effectively to improve the above-mentioned drawbacks.
Disclosure of Invention
The embodiment of the invention provides a composite thermometer and a control host thereof, which can effectively overcome the possible defects of the existing thermometer.
The embodiment of the invention discloses a combined type thermometer, which comprises: a control host, which comprises a control module, an electric connector and a battery module which are electrically coupled with each other; wherein the control module has a plurality of independent transmission paths which are connected to the electric connector; the temperature measuring component comprises a plurality of temperature measuring pieces, and each temperature measuring piece is provided with a matching connector and a temperature measuring module which are electrically coupled with each other; the mating connector of each temperature measuring piece is inserted into or separated from the electric connector, and any one of the temperature measuring pieces corresponds to one transmission path according to a measuring mechanism of the temperature measuring module; when one of the temperature measuring pieces is inserted into the electric connector of the control host through the matching connector, the control module judges the temperature measuring piece connected with the temperature measuring piece through the electric connector and receives an integrated temperature signal measured by the temperature measuring module along the corresponding transmission path.
The embodiment of the invention also discloses a control host of the composite thermometer, which comprises: a control module having independent transmission paths; an electrical connector connected to the plurality of transmission paths of the control module; the electric connector is used for detachably mounting a temperature measuring piece, so that the control module judges the measuring mechanism of the temperature measuring piece through the electric connector and receives the body temperature signal measured by the temperature measuring piece along the corresponding transmission path; and a battery module electrically coupled to the control module.
The embodiment of the invention also discloses a control host of the composite thermometer, which comprises: a control module having independent transmission paths; an electrical connector connected to the plurality of transmission paths of the control module; the electric connector is inserted into or separated from a temperature measuring piece, so that the control module judges the potential of the temperature measuring piece to execute a measuring mechanism; and a battery module electrically coupled to the control module; wherein the measuring mechanism is performed based on an average of the potentials received at a specific time, or the measuring mechanism is performed based on an average of a maximum value and a minimum value of the potentials received at a specific time.
In summary, the composite thermometer disclosed in the embodiments of the present invention utilizes the structural cooperation between the control host and the plurality of temperature measuring devices (e.g., the mating connector of each temperature measuring device is detachably connected to the electrical connector of the control host) and the electrical layout (e.g., the control host has a plurality of transmission paths corresponding to the plurality of temperature measuring devices, so as to meet different operation mechanisms of the plurality of temperature measuring devices), so as to select an appropriate temperature measuring device to be installed on the control host according to the current requirement, thereby effectively improving the convenience of the composite thermometer.
For a better understanding of the nature and technical content of the present invention, reference should be made to the following detailed description of the invention and the accompanying drawings, which are provided for illustration purposes only and are not intended to limit the scope of the invention in any way.
Drawings
Fig. 1 is a functional block diagram of a compound thermometer according to an embodiment of the present invention.
Fig. 2 is a perspective view of a compound thermometer according to an embodiment of the invention.
Fig. 3 is a schematic perspective view of the composite thermometer of the embodiment of the invention, in which the temperature measurement patch is installed on the control host.
Fig. 4 is a schematic perspective view of the composite thermometer of the embodiment of the present invention with a temperature probe installed on a control host.
Fig. 5 is a schematic perspective view of the compound thermometer of the embodiment of the invention with the charging element mounted on the control host.
Reference numerals:
100: combined thermometer
1: control host
11: control module
111: operational amplifier
112: controller
1121: analog-to-digital conversion unit
113: transmission path
1131: patch path
1132: probe path
12: battery module
13: electrical connector
131: first judging terminal
132: second judging terminal
14: shell body
15: display module
16: key module
17: wireless communication module
18: warning module
2: temperature measuring assembly
20: temperature measuring piece
2 a: temperature measuring patch
2 b: temperature measuring probe
21: temperature measuring module
211: thermistor unit
212: cable with a flexible connection
213: thermopile unit
22: mating connector
3: charging member
31: voltage transformation unit
32: charging connector
200: external system
Detailed Description
The following description is provided for the embodiments of the present disclosure relating to the compound thermometer and the control host thereof, and those skilled in the art will understand the advantages and effects of the present disclosure from the disclosure of the present disclosure. The invention is capable of other and different embodiments and its several details are capable of modification and various other changes, which can be made in various details within the specification and without departing from the spirit and scope of the invention. The drawings of the present invention are for illustrative purposes only and are not intended to be drawn to scale. The following embodiments will further explain the related art of the present invention in detail, but the disclosure is not intended to limit the scope of the present invention.
It will be understood that, although the terms first, second, third, etc. may be used herein to describe various elements or signals, these elements or signals should not be limited by these terms. These terms are used primarily to distinguish one element from another element or from one signal to another signal. In addition, the term "or" as used herein should be taken to include any one or combination of more of the associated listed items as the case may be.
Fig. 1 to 5 show an embodiment of the present invention. The present embodiment discloses a compound thermometer 100, which is suitable for portable or handheld use, and the compound thermometer 100 includes a control host 1, a temperature measuring component 2, and a charging element 3 in the present embodiment, but the invention is not limited thereto. For example, in other embodiments not shown in the present disclosure, the compound thermometer 100 may omit the charging member 3; alternatively, the control host 1 may be used by itself (e.g., for vending) or in combination with other components.
As shown in fig. 1 and 2, the control host 1 in this embodiment includes a control module 11, a battery module 12 electrically coupled to the control module 11, an electrical connector 13 electrically coupled to the control module 11, and a housing 14. The battery module 12 can be used to supply power required by the operation of the compound thermometer 100, and the battery module 12 is electrically coupled to the electrical connector 13 in the embodiment, so as to be repeatedly charged and used through the electrical connector 13, but the invention is not limited thereto.
The control module 11 includes an operational amplifier (OP-AMP) 111 and a controller 112 electrically coupled to each other, and the electrical connector 13 is electrically coupled to the OP-AMP 111 and the controller 112. In addition, the control module 11 may add functions or components according to design requirements, for example: in this embodiment, the controller 112 further includes an analog-to-digital conversion unit 1121.
It should be noted that the control module 11 has a plurality of independent transmission paths 113, which are all connected to the electrical connector 13. One of the transmission paths 113 is defined as a patch path 1131 extending directly from the electrical connector 13 to connect to the controller 112 (that is, the patch path 1131 does not touch the operational amplifier 111), and another transmission path 113 is defined as a probe path 1132 extending from the electrical connector 13 through the operational amplifier 111 to connect to the controller 112.
The control module 11, the electrical connector 13, and the battery module 12 are all mounted in the housing 14, and the plug port of the electrical connector 13 is exposed out of the housing 14, and the battery module 12 can be designed to be detached from and replaced with the housing 14 according to the requirement, which is not limited herein.
The temperature measuring component 2 comprises a plurality of temperature measuring pieces 20, and each temperature measuring piece 20 is provided with a temperature measuring module 21 and a matching connector 22 electrically coupled to the temperature measuring module 21. The temperature measuring modules 21 of the temperature measuring members 20 are respectively different measuring mechanisms, so as to define that the temperature measuring members 20 are of different types. The types of the temperature measuring members 20 are described in the following two types in the present embodiment; that is, one of the temperature measuring members 20 is defined as a temperature measuring patch 2a in the present embodiment, and the other one of the temperature measuring members 20 is defined as a temperature measuring probe 2 b.
In more detail, in the temperature measuring patch 2a, the temperature measuring module 21 includes a thermistor (thermistor) unit 211 and a cable 212 connecting the thermistor unit 211 and the mating connector 22. Accordingly, the operation mechanism of the temperature measuring patch 2a (e.g., the operation mechanism of the body temperature patch) is realized by the thermistor unit 211, so that the body temperature change of the subject can be monitored for a long time.
Furthermore, in the temperature measuring probe 2b, the temperature measuring module 21 includes a thermopile (thermal) unit 213 electrically coupled to the mating connector 22. Accordingly, the operation mechanism of the temperature probe 2b (e.g., the operation mechanism of the ear thermometer or the forehead thermometer) is realized by the thermopile unit 213, so as to rapidly and precisely measure the body temperature of the subject.
In addition, although the temperature measuring component 2 is described as including the temperature measuring patch 2a and the temperature measuring probe 2b in the embodiment, the invention is not limited thereto. For example, in other embodiments not shown in the present invention, the temperature measuring component 2 may be additionally provided with a temperature measuring element of other operation mechanisms according to design requirements, or a temperature measuring element of other operation mechanisms may be used to replace the temperature measuring patch 2a or the temperature measuring probe 2 b.
The mating connector 22 of each of the thermometric members 20 can be detachably connected to the electrical connector 13, and any one of the thermometric members 20 corresponds to one of the transmission paths 113 according to the measurement mechanism of the thermometric module 21 (e.g., the thermometric patch 2a corresponds to the patch path 1131, and the thermometric probe 2b corresponds to the probe path 1132).
As shown in fig. 1 and fig. 3 to 5, when one of the temperature measuring members 20 is selected from the plurality of temperature measuring members 20 and the mating connector 22 is plugged into the electrical connector 13 of the control host 1, the control module 11 (e.g., the controller 112) can determine the type of the temperature measuring member 20 connected thereto through the electrical connector 13 and receive the body temperature signal measured by the temperature measuring module 21 along the corresponding transmission path 113.
Accordingly, the compound thermometer 100 disclosed in the present embodiment utilizes the structural cooperation between the control host 1 and the plurality of temperature measuring devices 20 (e.g., the mating connector 22 of each temperature measuring device 20 is detachably inserted into the electrical connector 13 of the control host 1) and the electrical layout (e.g., the control host 1 is provided with a plurality of transmission paths 113 corresponding to the plurality of temperature measuring devices 20, respectively, so as to meet different operation mechanisms of the plurality of temperature measuring devices 20), so as to select an appropriate temperature measuring device 20 to be installed on the control host 1 according to the current requirement, thereby effectively improving the convenience of the compound thermometer 100.
It should be noted that the type of the temperature measuring component 20 is determined by the control module 11 through the electrical connector 13 in this embodiment, and it is preferably implemented in the following manner, but the invention is not limited thereto.
Further, the electrical connector 13 includes a first determining terminal 131 and a second determining terminal 132, and when the electrical connector 13 is connected to the mating connectors 22 of different temperature measuring devices 20, the first determining terminal 131 and the second determining terminal 132 can generate different voltage differences for the control module 11 to determine the type of the temperature measuring device 20. That is, the different voltage differences correspond to different types of the temperature measuring members 20, so that the control module 11 can quickly determine the type of the temperature measuring member 20.
The charging member 3 includes a transforming unit 31 and a charging connector 32 electrically coupled to the transforming unit 31, and the charging connector 32 can be detachably connected to the electrical connector 13. When the charging element 3 is selected from the plurality of temperature measuring elements 20 and the charging elements 3 and the charging connector 32 is plugged into the electrical connector 13 of the control host 1, the control module 11 can determine that the temperature measuring elements are connected to the charging element 3 through the electrical connector 13 and charge the battery module 12 through the charging element 3 and the electrical connector 13.
Accordingly, in the compound thermometer 100 disclosed in the present embodiment, the control host 1 is electrically connected to the plurality of temperature measuring devices 20 and the charging device 3 through a structural fit (for example, the mating connector 22 and the charging connector 32 are both detachably connected to the electrical connector 13) and an electrical layout (for example, the plurality of temperature measuring devices 20 are electrically connected to the plurality of transmission paths 113 through the electrical connector 13, and the charging device 3 is electrically connected to the battery module 12 through the electrical connector 13), so that the charging device 3 can be mounted on the control host 1 for charging, thereby effectively improving the convenience of the compound thermometer 100.
It should be noted that the determination between the temperature measuring part 20 and the charging part 3 is implemented by the control module 11 through the electrical connector 13 in this embodiment, and it is preferably implemented in the following manner, but the invention is not limited thereto.
Further, the first determining terminal 131 can generate a first potential when the electrical connector 13 is connected to the mating connector 22 of any one of the temperature measuring devices 20, which is different from a second potential generated when the electrical connector 13 is connected to the charging connector 32 of the charging device 3 by the first determining terminal 131, so that the control module 11 can determine whether the electrical connector 13 is connected to the temperature measuring device 20 or the charging device 3.
The control module 11 judges a first potential of the temperature measuring part 20 to execute a measuring mechanism; wherein the measuring mechanism is performed based on an average of the first potential received at a specific time, or the measuring mechanism is performed based on an average of a maximum value and a minimum value of the first potential received at a specific time. For example, the first determining terminal 131 generates a plurality of first potentials within a specific time of 1 to 3 seconds according to the electrical connector 13 connected to the mating connector 22 of the temperature measuring device 20, and then selects the measurement mechanism to be the forehead temperature measurement mechanism or the ear temperature measurement mechanism according to the average value or the average value of the maximum value and the minimum value of the plurality of first potentials.
It should be noted that, in the present embodiment, the compound thermometer 100 can be selectively adjusted according to design requirements. For example, as shown in fig. 1, the control host 1 includes a display module 15, a key module 16, a wireless communication module 17, and an alarm module 18, and the above components can be added to the control host 1 according to design requirements. The above-described components of the control master 1 will be briefly described below, respectively.
The display module 15 is embedded in the housing 14 and electrically coupled to the control module 11 (e.g., the controller 112) for displaying data (e.g., the body temperature of the subject, the power of the battery module 12, and the type of the temperature measuring component 20) in the compound thermometer 100.
The button module 16 is movably disposed on the housing 14 and electrically coupled to the control module 11 (e.g., the controller 112) for pressing to trigger the compound thermometer 100, but the invention is not limited thereto. For example, in other embodiments not shown, the key module 16 may be a non-physical key (e.g., an image displayed on the display module) integrated into the display module 15.
Furthermore, the wireless communication module 17 is installed inside the housing 14 and electrically coupled to the control module 11 (e.g., the controller 112) for transmitting the body temperature signal to an external system 200 (e.g., a cloud server, a nursing station, or a terminal device) in a wireless manner (e.g., a bluetooth manner or a WiFi manner).
The alarm module 18 is mounted in the housing 14 and electrically coupled to the control module 11 (e.g., the controller 112) for emitting an alarm signal (e.g., an alarm sound and/or an alarm image displayed on the display module 15) when the body temperature signal exceeds a predetermined value.
In summary, the composite thermometer disclosed in the embodiments of the present invention utilizes the structural cooperation between the control host and the plurality of temperature measuring devices (e.g., the mating connector of each temperature measuring device is detachably connected to the electrical connector of the control host) and the electrical layout (e.g., the control host has a plurality of transmission paths corresponding to the plurality of temperature measuring devices, so as to meet different operation mechanisms of the plurality of temperature measuring devices), so as to select an appropriate temperature measuring device to be installed on the control host according to the current requirement, thereby effectively improving the convenience of the composite thermometer.
Furthermore, the temperature measuring assembly adopted by the combined thermometer disclosed by the embodiment of the invention can comprise the temperature measuring patch capable of monitoring the temperature change of the tested person for a long time and the temperature measuring probe capable of rapidly and accurately measuring the temperature of the tested person, so that the combined thermometer meets most of the temperature measuring requirements of the general public.
Furthermore, in the composite thermometer disclosed in this embodiment, the control host is capable of installing the charging element on the control host for charging through structural matching and electrical layout between the plurality of temperature measuring elements and the charging element, so that the use convenience of the composite thermometer is effectively improved.
In addition, the compound thermometer disclosed in the embodiment of the present invention can accurately distinguish the temperature measuring element from the charging element through the first determination terminal of the electrical connector, and can further accurately distinguish the types of the temperature measuring elements through the first determination terminal and the second determination terminal of the electrical connector.
The disclosure is only a preferred embodiment of the invention and is not intended to limit the scope of the invention, so that all equivalent technical changes made by using the contents of the specification and drawings are included in the scope of the invention.

Claims (11)

1. A compound thermometer comprising:
a control host, which comprises a control module, an electric connector and a battery module which are electrically coupled with each other; wherein the control module has a plurality of independent transmission paths which are connected to the electric connector; and
the temperature measuring component comprises a plurality of temperature measuring pieces, and each temperature measuring piece is provided with a matching connector and a temperature measuring module which are electrically coupled with each other; the mating connector of each temperature measuring piece is inserted into or separated from the electric connector, and any one of the temperature measuring pieces corresponds to one transmission path according to a measuring mechanism of the temperature measuring module;
when one of the temperature measuring pieces is inserted into the electric connector of the control host through the matching connector, the control module judges the temperature measuring piece connected with the temperature measuring piece through the electric connector and receives an integrated temperature signal measured by the temperature measuring module along the corresponding transmission path.
2. The compound thermometer of claim 1 wherein one of said plurality of temperature measuring elements is a temperature measuring patch, and wherein said temperature measuring module comprises a thermistor unit and a cable connecting said thermistor unit and said mating connector.
3. The compound thermometer of claim 2 wherein another one of said plurality of temperature measuring elements is a temperature measuring probe and wherein said temperature measuring module comprises a thermopile unit electrically coupled to said mating connector.
4. The compound thermometer of claim 3 wherein said control module comprises an operational amplifier and a controller electrically coupled to each other, and said electrical connector is electrically coupled to said operational amplifier and said controller; wherein one of the transmission paths is a patch path and the other transmission path is a probe path; the patch path and the probe path respectively correspond to the temperature measuring patch and the temperature measuring probe, extend from the electric connector, extend through the operational amplifier and then are connected to the controller.
5. The compound thermometer of claim 1, wherein the electrical connector comprises a first determining terminal and a second determining terminal, and when the electrical connector is connected to the mating connectors of different temperature measuring members, the first determining terminal and the second determining terminal generate a plurality of voltage differences for the control module to determine the type of the temperature measuring member.
6. The compound thermometer of claim 1, wherein the battery module is electrically coupled to the electrical connector, and the compound thermometer comprises a charging element including a charging connector and a transforming unit electrically coupled to each other, the charging connector being plugged into or separated from the electrical connector; when the charging connector is plugged into the electric connector of the control host, the control module judges that the charging connector is connected to the charging piece, and charges the battery module through the charging piece and the electric connector.
7. The compound thermometer of claim 6 wherein said electrical connector comprises a first determining terminal, and said first determining terminal generates a first voltage when said electrical connector is connected to said mating connector of any one of said temperature measuring members, which is different from a second voltage generated when said electrical connector is connected to said charging connector of said charging member, for said control module to determine whether said electrical connector is connected to said temperature measuring member or said charging member.
8. The compound thermometer of claim 1 wherein said control host further comprises:
a display module electrically coupled to the control module;
the key module is electrically coupled with the control module and used for pressing to trigger the combined type thermometer;
the wireless communication module is electrically coupled with the control module and used for transmitting the body temperature signal to an external system in a wireless mode; and
and the warning module is electrically coupled with the control module and used for sending a warning signal when the body temperature signal exceeds a preset value.
9. A control host of a compound thermometer comprises:
a control module having independent transmission paths;
an electrical connector connected to the plurality of transmission paths of the control module; the electric connector is used for detachably mounting a temperature measuring piece, so that the control module judges the measuring mechanism of the temperature measuring piece through the electric connector and receives the body temperature signal measured by the temperature measuring piece along the corresponding transmission path; and
a battery module electrically coupled to the control module.
10. The control host of claim 9, wherein the battery module is electrically coupled to the electrical connector, the electrical connector comprises a first determining terminal, and the first determining terminal generates a first voltage when the electrical connector is connected to the temperature measuring member, which is different from a second voltage generated when the electrical connector is connected to a charging member, for the control module to determine whether the electrical connector is connected to the temperature measuring member or the charging member.
11. A control host of a compound thermometer comprises:
a control module having independent transmission paths;
an electrical connector connected to the plurality of transmission paths of the control module; the electric connector is inserted into or separated from a temperature measuring piece, so that the control module judges the potential of the temperature measuring piece to execute a measuring mechanism; and
a battery module electrically coupled to the control module;
wherein the measuring mechanism is performed based on an average of the potentials received at a specific time, or the measuring mechanism is performed based on an average of a maximum value and a minimum value of the potentials received at a specific time.
CN202111392385.7A 2021-11-23 2021-11-23 Combined type thermometer and control host thereof Pending CN114112112A (en)

Priority Applications (2)

Application Number Priority Date Filing Date Title
CN202111392385.7A CN114112112A (en) 2021-11-23 2021-11-23 Combined type thermometer and control host thereof
TW111100336A TWI815266B (en) 2021-11-23 2022-01-05 Modularize thermometer and control host thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202111392385.7A CN114112112A (en) 2021-11-23 2021-11-23 Combined type thermometer and control host thereof

Publications (1)

Publication Number Publication Date
CN114112112A true CN114112112A (en) 2022-03-01

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KR101579071B1 (en) * 2014-08-20 2015-12-22 (주)다솔이엔지 Probe for measuring sheet resistance using clamping structure and connected by socket
CN205031226U (en) * 2015-05-18 2016-02-17 深圳市经云创想科技有限公司 Multi -functional wireless temperature meter
CN205144537U (en) * 2016-01-06 2016-04-13 深圳市长桑技术有限公司 Continuous blood pressure of wearing formula, heart rate measurement appearance
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